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Synthesis of polymer hybrid latex polystyrene methylmethacrylate-co-butylacrylate with organo-montmorillonite as filler through miniemulsion polymerization for barrier paper application

机译:用少乳剂聚合对含量的含有有机锰矿聚合物杂交乳胶聚苯乙烯甲基丙烯酸酯 - 丁基丙烯酸酯的合成通过微型乳剂聚合进行阻隔纸应用

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Nanocomposite have a huge potential in the future technologies and scientific communities.It is possible to design new materials with a simple modification and new materials have different properties and improvement in its mechanical properties and application fields.Hybrid latex based on monomer styrene(St),butyl acrylate(BA)and methylmethacrylate(MMA)have been studied and used for barrier paper applications in food industries in order to replace polypropylene(PP),polyethylene(PE)or polyethylene terephthalate(PET)materials.To achieve better hybrid materials,various techniques and materials have been utilized,montmorillonite(MMT)from smectite family have been selected as filler in order to synthesize polymer clay nanocomposites(PCNs).The selection of MMT as filler due to its high aspect ratio,high modulus and high cation exchange capacity(CEC).MMT was not susceptible to common polymer due to its organophobiciry,low basal spacing,and incompatible to common monomers phase.Surface modification of MMT with traditional ion exchange method can be done through ion exchange with quaternary alkyl ammonium surfactants.The objective of surface modification of MMT are to change its nature hydrophilicity to organophilicity,in the same time to increase its basal spacing.Various quaternary alkylammonium cationic surfactants have been used;in this study,three type of alkylammonium were selected to be used due to its different in alkyl carbon chain lengths.Intercalation of surfactants cation in MMT depend on the layer-charge alkyl carbon chains,selection of myristyltrimethylammonium bromide(MTAB)with C17 carbon chains,cetyltrimethylammonium bromide(CTAB)with CI9 carbon chains and octadecyltrimethylammonium bromide(OTAB)with C21 carbon chains could give an answer of the selection of organoclay that compatible with St,BA and MMA.This study focuses on the microstructure of organo montmorillonite(OMMT)after surface modification and the potential to be used as filler in synthesis of hybrid latex through miniemulsion polymerization technique.The intercalation or exfoliation of MMT through ion exchange with alkylammonium surfactant were studied,interlayer spacing of OMMT were analysed with X-ray diffraction,small angle X-ray scanning(SAXS)technique,presence of cationic surfactant in the interlayer space and bond character and arrangement of surfactant ions were analysed by Fourier Transform Infrared(FTIR),Thermogravimetric analysis(TGA)and Transmission Electron Microscope(TEM).Synthesis of hybrid latex was done by miniemulsion polymerization technique with selected OMMT filler.Series of experiments were performed to study the polymerization variables such as filler loading,role of surfactant/cosurfactant and filler solubility in monomer emulsions.The results shown that water soluble surfactant SDS in miniemulsion polymerization resulted lower coagulum and smaller particle size compare to non-ionic surfactant(TX405)and cationic surfactant(OTAB).Combination of non-ionic surfactant(TX405)with ionic surfactant(SDS)with ration 1:2 showed the better results than SDS alone,with lowest coagulum,narrow particle size distribution,and lowest Broekfield Viscosity.Scale up loading level of OMMT filler in miniemulsion to 5.0 wt%,resulting instability before and after polymerization with regard to high coagulum content and low monomer conversion rate(<90%).The hybrid latex resulted from miniemulsion polymerization will be applied on paperboard with hand rod coater with coating weight 15-20 gsm.The coated paperboard tested on its water vapour transmission rate(WVTR)together with paperboard coated with PE from melt blending process.Paperboard coated with hybrid latex comparable to paperboard coated with PE,indicated improvement in its WVTR value compare to paperboard coated with latex without filler addition.The main target of this research was to synthesis polymer hybrid latex for super barrier material for food packaging in order to replace unrecyclable PP,PE or PE
机译:纳米复合材料在未来的技术和科学社区具有巨大的潜力。可以使用简单的改性和新材料设计新材料,其机械性能和应用领域具有不同的性质和改进。基于单体苯乙烯(ST)的幼苗乳胶,已经研究了丙烯酸丁酯(Ba)和甲基丙烯酸甲酯(MMA),并用于食品工业中的阻隔纸应用,以取代聚丙烯(PP),聚乙烯(PE)或聚对苯二甲酸乙二醇酯(PET)材料。达到更好的杂化材料已经使用了从蒙脱石家族的蒙脱石(MMT)作为填料,以合成聚合物粘土纳米复合材料(PCN)。由于其高纵横比,高模量和高阳离子交换能力,MMT作为填料的选择(CEC).MMT由于其有机纤维,低基础间距,并且与普通单体相位不相容,不易普遍普通聚合物。树立模型具有传统离子交换方法的MMT,可以通过与季烷基铵表面活性剂的离子交换来完成。MMT的表面改性的目的是改变其对亲子性的自然亲水性,同时增加其基础间距。季铵阳离子阳离子已经使用了表面活性剂;在本研究中,选择了三种类型的烷基铵,由于其烷基碳链长度不同,因此使用它在MMT中的表面活性剂阳离子取决于层电荷烷基碳链,选择肌肌基三甲基溴化铵(MTAB)用C17碳链,用C 19碳链和辛丙基三甲基溴化铵(OTAb)的碳链,具有C21碳链的溴化氢溴化物(Otab)可以提供与ST,BA和MMA相容的有机粘土选择的答案。本研究重点是微观结构表面改性后有机莫尔米尔酮(OMMT)和用作合成Hybr的填料通过微乳液聚合technique.The插层或通过与表面活性剂的烷基铵离子交换MMT的剥离ID胶乳进行了研究,夹层OMMT的间隔与X射线衍射,小角X射线扫描(SAXS)技术中,阳离子表面活性剂在存在进行了分析通过傅里叶变换红外(FTIR),热重分析(TGA)和透射电子显微镜(TEM)分析了表面活性剂离子的层间空间和粘合性特征和布置。通过测液聚合技术进行杂交乳液的合成,用所选OMMT填充物完成进行实验以研究聚合变量,例如填料载荷,表面活性剂/含有含有填料在单体乳液中的溶解度和填料溶解度。结果表明,微乳液聚合中的水溶性表面活性剂SDS使得凝结下降和较小的粒度与非离子表面活性剂相比(TX405)和阳离子表面活性剂(OTAB)。非离子S的组合具有离子表面活性剂(SDS)的胶合剂(TX405),具有比例1:2的比SDS单独显示出越好的结果,具有最低凝结物,窄的粒度分布,最低的Broekfield粘度。在微量乳液中换下OMMT填料的装载水平至5.0wt% ,在高凝结液和低单体转化率(<90%)方面产生的不稳定性(<90%)。杂交乳胶聚合的杂交乳胶将在纸板上涂上手杆涂布机,涂层重量15-20 gsm。涂层纸板在其水蒸气传输速率(WVTR)上与熔融混合过程一起涂有PE的纸板。涂有与纸板涂有PE的混合乳胶的纸板,表明其WVTR值的改善与胶囊涂有乳胶的纸板,没有填充剂。本研究的主要目标是合成用于食品包装的超级屏障材料的聚合物杂交乳胶,以取代不可粘度的PP,PE或PE

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